Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, 250012, China.
New Phytol. 2023 Jan;237(2):515-531. doi: 10.1111/nph.18408. Epub 2022 Sep 5.
Unlike bibenzyls derived from the vascular plants, lunularic acid (LA), a key precursor for macrocyclic bisbibenzyl synthesis in nonvascular liverworts, exhibits the absence of one hydroxy group within the A ring. It was hypothesized that both polyketide reductase (PKR) and stilbenecarboxylate synthase 1 (STCS1) were involved in the LA biosynthesis, but the underlined mechanisms have not been clarified. This study used bioinformatics analysis with molecular, biochemical and physiological approaches to characterize STCS1s and PKRs involved in the biosynthesis of LA. The results indicated that MpSTCS1s from Marchantia polymorpha catalyzed both C2→C7 aldol-type and C6→C1 Claisen-type cyclization using dihydro-p-coumaroyl-coenzyme A (CoA) and malonyl-CoA as substrates to yield a C6-C2-C6 skeleton of dihydro-resveratrol following decarboxylation and the C6-C3-C6 type of phloretin in vitro. The protein-protein interaction of PKRs with STCS1 (PPI-PS) was revealed and proved essential for LA accumulation when transiently co-expressed in Nicotiana benthamiana. Moreover, replacement of the active domain of STCS1 with an 18-amino-acid fragment from the chalcone synthase led to the PPI-PS greatly decreasing and diminishing the formation of LA. The replacement also increased the chalcone formation in STCS1s. Our results highlight a previously unrecognized PPI in planta that is indispensable for the formation of LA.
与来源于维管植物的二苄基不同,环叶酸(LA)是无维管叶状植物中环二联苯类化合物合成的关键前体,其 A 环内缺少一个羟基。据推测,聚酮还原酶(PKR)和芪羧酸合酶 1(STCS1)都参与了 LA 的生物合成,但其中的作用机制尚未阐明。本研究采用生物信息学分析、分子、生化和生理学方法,对参与 LA 生物合成的 STCS1 和 PKR 进行了特征分析。结果表明,来自 Marchantia polymorpha 的 MpSTCS1s 可以使用二氢对香豆酰辅酶 A(CoA)和丙二酰辅酶 A 作为底物,催化 C2→C7 羟醛缩合型和 C6→C1 Claisen 型环化反应,生成二氢白藜芦醇的 C6-C2-C6 骨架,随后发生脱羧反应和 phloretin 的 C6-C3-C6 类型,在体外。揭示了 PKRs 与 STCS1(PPI-PS)的蛋白-蛋白相互作用,并证明了当在 Nicotiana benthamiana 中瞬时共表达时,PPI-PS 对 LA 积累是必不可少的。此外,用来自查尔酮合酶的 18 个氨基酸片段替换 STCS1 的活性结构域,导致 PPI-PS 大大减少,LA 的形成减少。这种替换还增加了 STCS1s 中查尔酮的形成。我们的研究结果强调了一种以前未被识别的植物体内 PPI,它对 LA 的形成是不可或缺的。